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Efficient quantitative phase microscopy using programmable annular LED illumination

机译:使用可编程环形LED照明的高效定量相显微镜

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摘要

In this work, we present an efficient quantitative phase imaging (QPI) approach using programmable annular LED illumination. As a new type of coded light source, the LED array provides flexible illumination control for noninterferometric QPI based on a traditional microscopic configurations. The proposed method modulates the transfer function of system by changing the LED illumination pattern, which provides noise-robust response of transfer function and achieves twice resolution limit of objective NA. The quantitative phase can be recovered from slightly defocused intensity images through inversion of transfer function. Moreover, the weak object transfer function (WOTF) of axis-symmetric oblique source is derived, and the noise-free and noisy simulation results validate the predicted theory. Finally, we experimentally confirm accurate and repeatable performance of our method by imaging calibrated phase samples and cellular specimens with different NA objectives.
机译:在这项工作中,我们提出了使用可编程环形LED照明的高效定量相位成像(QPI)方法。作为一种新型的编码光源,LED阵列可基于传统的微观配置为非干涉QPI提供灵活的照明控制。所提出的方法通过改变LED照明图案来调制系统的传递函数,从而提供传递函数的鲁棒性响应,并达到目标NA的两倍分辨率极限。通过传递函数的反演,可以从稍微散焦的强度图像中恢复定量相位。此外,推导了轴对称斜波源的弱物体传递函数(WOTF),并且无噪声和有噪声的仿真结果验证了该理论的正确性。最后,我们通过对标定的相位样品和具有不同NA物镜的细胞标本进行成像,实验性地证实了我们方法的准确性和可重复性。

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